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Effects of Constraint-Induced Normal Stress on the Failure of Notched Titanium Aluminides

机译:约束诱导的正常应力对缺口钛矿物质失效的影响

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Titanium aluminides are candidates for replacing nickel superalloys in some aircraft engine components. In uniaxial tension tests, these materials experience plastic strains at failure that place them in-between traditional definitions for ductile and brittle materials. This study considers the appropriate continuum mechanics failure criterion for these materials under multiaxial loading conditions (based on either the maximum equivalent plastic strain or the maximum normal stress). The material tested has a predominantly lamellar microstructure with approximately 25vol.% equiaxed gamma grains. Cylindrical notched tensile specimens are tested which experience elevated normal stresses in their interiors due to circumferential constraint during plastic deformation. Results are presented which quantify reductions in failure loads due to elevated normal stress, compared to those predicted by a maximum equivalent plastic strain criterion. To properly interpret the experimental results, the effects of notch strengthening must be included in the model predictions. Model and experimental results suggest that this TiAl alloy has some sensitivity to normal stress and that a combined failure criterion is needed to accurately predict failure under multiaxial loading conditions. A fracture initiation and failure mechanism requiring a combination of normal stress and plastic straining is suggested that is consistent with observed features at fracture initiation sites.
机译:钛矿石是用于在一些飞机发动机部件中更换镍高温合金的候选物。在单轴张力试验中,这些材料在失效的情况下经历塑性菌株,将它们放在延性和脆性材料中的传统定义之间。本研究考虑了这些材料在多轴加载条件下的适当连续性力学故障标准(基于最大当量塑性应变或最大正常应力)。测试的材料具有主要的层状微观结构,具有大约25Vol。%等轴γ颗粒。通过塑性变形期间,测试圆柱形切口拉伸样品,其由于周向约束而经历其内部的正常应力。介绍了由于由最大等效塑性应变标准预测的那些而定量由于正常应力升高而导致的失效载荷的降低。为了正确解释实验结果,必须包括在模型预测中的缺口强化的影响。模型和实验结果表明,该Tial合金对正常应力具有一些敏感性,并且需要组合的故障标准来准确地预测多轴加载条件下的失效。建议需要组合正常应力和塑性紧张组合的断裂起始和失效机制,其与断裂引发位点的观察特征一致。

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